Alkali-activated materials, especially when activated by water glass, exhibit substantial drying shrinkage that hinders their broader industrial application. The effect of shrinkage-reducing admixtures (SRA), based on polypropylene glycol, on drying shrinkage of alkali-activated blast furnace slag (BFS) mortars was examined. The determination of SRA efficiency and the influence of potassium alkali activators with varying silicate modulus on drying shrinkage characteristics were studied. It was observed that a high amount of alkalis positively affected the effect of SRA. The higher the amount of alkalis was, the lower was the drying shrinkage. The paper further discusses and underlines the role of the amount of alkali ions on the properties ...
Binders obtained by alkaline activation of ground granulated blast furnace slag (GGBFS) represent an...
The worldwide production of Fe-Si-Ca rich residues is expected to increase and the development of su...
Alkali-Activated Binders (AABs) are promoted as sustainable alternatives to ordinary Portland cement...
Alkali activated materials, especially when activated with waterglass, are subjected to substantial ...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
Significant drying shrinkage is one of the main limitations for the wider utilization of alkali-acti...
The several types of alkali activated materials (AAM) are in global research interest for number of ...
The effect of a shrinkage reducing admixture (SRA) on the mechanical properties and drying shrinkage...
This thesis presents a simultaneous investigation of the autogenous and total drying shrinkage behav...
This thesis is focused on the principles of behavior of shrinkage reducing agents (SRA) in alkali-ac...
Alkali activated materials (AAM) are emerging as building materials due to their high performance an...
This doctoral thesis is focused on the possibilities of alkali-activated slag (AAS) shrinkage reduct...
In this study, superabsorbent polymers (SAPs) and two expansive additives (a MgO-based expansion age...
The use of non-traditional binders has increased over the last decades and alkaliactivated materials...
Shrinkage of alkali‐activated slag (AAS) cement is a critical issue for its industrial application. ...
Binders obtained by alkaline activation of ground granulated blast furnace slag (GGBFS) represent an...
The worldwide production of Fe-Si-Ca rich residues is expected to increase and the development of su...
Alkali-Activated Binders (AABs) are promoted as sustainable alternatives to ordinary Portland cement...
Alkali activated materials, especially when activated with waterglass, are subjected to substantial ...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
Significant drying shrinkage is one of the main limitations for the wider utilization of alkali-acti...
The several types of alkali activated materials (AAM) are in global research interest for number of ...
The effect of a shrinkage reducing admixture (SRA) on the mechanical properties and drying shrinkage...
This thesis presents a simultaneous investigation of the autogenous and total drying shrinkage behav...
This thesis is focused on the principles of behavior of shrinkage reducing agents (SRA) in alkali-ac...
Alkali activated materials (AAM) are emerging as building materials due to their high performance an...
This doctoral thesis is focused on the possibilities of alkali-activated slag (AAS) shrinkage reduct...
In this study, superabsorbent polymers (SAPs) and two expansive additives (a MgO-based expansion age...
The use of non-traditional binders has increased over the last decades and alkaliactivated materials...
Shrinkage of alkali‐activated slag (AAS) cement is a critical issue for its industrial application. ...
Binders obtained by alkaline activation of ground granulated blast furnace slag (GGBFS) represent an...
The worldwide production of Fe-Si-Ca rich residues is expected to increase and the development of su...
Alkali-Activated Binders (AABs) are promoted as sustainable alternatives to ordinary Portland cement...